mirror of
https://github.com/openstenoproject/qmk
synced 2024-11-10 10:39:09 +00:00
508 lines
16 KiB
C
508 lines
16 KiB
C
/* Copyright 2020 Christopher Courtney, aka Drashna Jael're (@drashna) <drashna@live.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <string.h>
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#include <stddef.h>
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#include "matrix.h"
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#include QMK_KEYBOARD_H
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#define ROWS_PER_HAND (MATRIX_ROWS / 2)
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#ifdef RGBLIGHT_ENABLE
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# include "rgblight.h"
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#endif
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#ifdef BACKLIGHT_ENABLE
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# include "backlight.h"
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#endif
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#ifdef ENCODER_ENABLE
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# include "encoder.h"
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static pin_t encoders_pad[] = ENCODERS_PAD_A;
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# define NUMBER_OF_ENCODERS (sizeof(encoders_pad) / sizeof(pin_t))
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#endif
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#ifdef POINTING_DEVICE_ENABLE
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static int8_t split_mouse_x = 0, split_mouse_y = 0;
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#endif
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#ifdef OLED_DRIVER_ENABLE
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# include "oled_driver.h"
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#endif
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#if defined(USE_I2C)
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# include "i2c_master.h"
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# include "i2c_slave.h"
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typedef struct _I2C_slave_buffer_t {
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matrix_row_t smatrix[ROWS_PER_HAND];
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# ifdef SPLIT_MODS_ENABLE
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uint8_t real_mods;
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uint8_t weak_mods;
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# ifndef NO_ACTION_ONESHOT
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uint8_t oneshot_mods;
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# endif
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# endif
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# ifdef BACKLIGHT_ENABLE
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uint8_t backlight_level;
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# endif
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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rgblight_syncinfo_t rgblight_sync;
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# endif
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# ifdef ENCODER_ENABLE
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uint8_t encoder_state[NUMBER_OF_ENCODERS];
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# endif
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# ifdef WPM_ENABLE
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uint8_t current_wpm;
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# endif
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int8_t mouse_x;
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int8_t mouse_y;
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bool oled_on;
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layer_state_t t_layer_state;
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layer_state_t t_default_layer_state;
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bool is_rgb_matrix_suspended;
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} __attribute__((packed)) I2C_slave_buffer_t;
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static I2C_slave_buffer_t *const i2c_buffer = (I2C_slave_buffer_t *)i2c_slave_reg;
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# define I2C_BACKLIGHT_START offsetof(I2C_slave_buffer_t, backlight_level)
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# define I2C_RGB_START offsetof(I2C_slave_buffer_t, rgblight_sync)
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# define I2C_KEYMAP_START offsetof(I2C_slave_buffer_t, smatrix)
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# define I2C_REAL_MODS_START offsetof(I2C_slave_buffer_t, real_mods)
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# define I2C_WEAK_MODS_START offsetof(I2C_slave_buffer_t, weak_mods)
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# define I2C_ONESHOT_MODS_START offsetof(I2C_slave_buffer_t, oneshot_mods)
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# define I2C_ENCODER_START offsetof(I2C_slave_buffer_t, encoder_state)
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# define I2C_WPM_START offsetof(I2C_slave_buffer_t, current_wpm)
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# define I2C_MOUSE_X_START offsetof(I2C_slave_buffer_t, mouse_x)
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# define I2C_MOUSE_Y_START offsetof(I2C_slave_buffer_t, mouse_y)
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# define I2C_OLED_ON_START offsetof(I2C_slave_buffer_t, oled_on)
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# define I2C_LAYER_STATE_START offsetof(I2C_slave_buffer_t, t_layer_state)
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# define I2C_DEFAULT_LAYER_STATE_START offsetof(I2C_slave_buffer_t, t_default_layer_state)
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# define I2C_RGB_MATRIX_SUSPEND_START offsetof(I2C_slave_buffer_t, is_rgb_matrix_suspended)
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# define TIMEOUT 100
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# ifndef SLAVE_I2C_ADDRESS
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# define SLAVE_I2C_ADDRESS 0x32
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# endif
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// Get rows from other half over i2c
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bool transport_master(matrix_row_t matrix[]) {
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i2c_readReg(SLAVE_I2C_ADDRESS, I2C_KEYMAP_START, (void *)matrix, sizeof(i2c_buffer->smatrix), TIMEOUT);
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// write backlight info
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# ifdef BACKLIGHT_ENABLE
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uint8_t level = is_backlight_enabled() ? get_backlight_level() : 0;
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if (level != i2c_buffer->backlight_level) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_BACKLIGHT_START, (void *)&level, sizeof(level), TIMEOUT) >= 0) {
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i2c_buffer->backlight_level = level;
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}
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}
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# endif
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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if (rgblight_get_change_flags()) {
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rgblight_syncinfo_t rgblight_sync;
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rgblight_get_syncinfo(&rgblight_sync);
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_RGB_START, (void *)&rgblight_sync, sizeof(rgblight_sync), TIMEOUT) >= 0) {
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rgblight_clear_change_flags();
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}
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}
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# endif
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# ifdef ENCODER_ENABLE
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i2c_readReg(SLAVE_I2C_ADDRESS, I2C_ENCODER_START, (void *)i2c_buffer->encoder_state, sizeof(i2c_buffer->encoder_state), TIMEOUT);
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encoder_update_raw(i2c_buffer->encoder_state);
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# endif
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# ifdef WPM_ENABLE
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uint8_t current_wpm = get_current_wpm();
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if (current_wpm != i2c_buffer->current_wpm) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_WPM_START, (void *)¤t_wpm, sizeof(current_wpm), TIMEOUT) >= 0) {
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i2c_buffer->current_wpm = current_wpm;
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}
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}
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# endif
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# ifdef POINTING_DEVICE_ENABLE
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if (is_keyboard_left()) {
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report_mouse_t temp_report = pointing_device_get_report();
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i2c_readReg(SLAVE_I2C_ADDRESS, I2C_MOUSE_X_START, (void *)&i2c_buffer->mouse_x, sizeof(i2c_buffer->mouse_x), TIMEOUT);
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temp_report.x = i2c_buffer->mouse_x;
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i2c_readReg(SLAVE_I2C_ADDRESS, I2C_MOUSE_Y_START, (void *)&i2c_buffer->mouse_y, sizeof(i2c_buffer->mouse_y), TIMEOUT);
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temp_report.y = i2c_buffer->mouse_y;
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pointing_device_set_report(temp_report);
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}
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# endif
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# ifdef SPLIT_MODS_ENABLE
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uint8_t real_mods = get_mods();
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if (real_mods != i2c_buffer->real_mods) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_REAL_MODS_START, (void *)&real_mods, sizeof(real_mods), TIMEOUT) >= 0) {
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i2c_buffer->real_mods = real_mods;
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}
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}
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uint8_t weak_mods = get_weak_mods();
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if (weak_mods != i2c_buffer->weak_mods) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_WEAK_MODS_START, (void *)&weak_mods, sizeof(weak_mods), TIMEOUT) >= 0) {
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i2c_buffer->weak_mods = weak_mods;
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}
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}
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# ifndef NO_ACTION_ONESHOT
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uint8_t oneshot_mods = get_oneshot_mods();
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if (oneshot_mods != i2c_buffer->oneshot_mods) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_ONESHOT_MODS_START, (void *)&oneshot_mods, sizeof(oneshot_mods), TIMEOUT) >= 0) {
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i2c_buffer->oneshot_mods = oneshot_mods;
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}
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}
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# endif
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# endif
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if (layer_state != i2c_buffer->t_layer_state) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_LAYER_STATE_START, (void *)&layer_state, sizeof(layer_state), TIMEOUT) >= 0) {
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i2c_buffer->t_layer_state = layer_state;
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}
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}
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if (default_layer_state != i2c_buffer->t_default_layer_state) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_DEFAULT_LAYER_STATE_START, (void *)&default_layer_state, sizeof(default_layer_state), TIMEOUT) >= 0) {
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i2c_buffer->t_default_layer_state = default_layer_state;
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}
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}
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# ifdef OLED_DRIVER_ENABLE
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bool is_oled = is_oled_on();
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if (is_oled != i2c_buffer->oled_on) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_LAYER_STATE_START, (void *)&is_oled, sizeof(is_oled), TIMEOUT) >= 0) {
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i2c_buffer->oled_on = is_oled;
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}
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}
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# endif
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# ifdef RGB_MATRIX_ENABLE
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bool sus_state = rgb_matrix_get_suspend_state();
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if (sus_state != i2c_buffer->is_rgb_matrix_suspended) {
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if (i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_RGB_MATRIX_SUSPEND_START, (void *)&sus_state, sizeof(sus_state), TIMEOUT) >= 0) {
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i2c_buffer->is_rgb_matrix_suspended = sus_state;
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}
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}
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# endif
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return true;
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}
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void transport_slave(matrix_row_t matrix[]) {
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// Copy matrix to I2C buffer
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memcpy((void *)i2c_buffer->smatrix, (void *)matrix, sizeof(i2c_buffer->smatrix));
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// Read Backlight Info
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# ifdef BACKLIGHT_ENABLE
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backlight_set(i2c_buffer->backlight_level);
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# endif
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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// Update the RGB with the new data
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if (i2c_buffer->rgblight_sync.status.change_flags != 0) {
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rgblight_update_sync(&i2c_buffer->rgblight_sync, false);
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i2c_buffer->rgblight_sync.status.change_flags = 0;
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}
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# endif
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# ifdef ENCODER_ENABLE
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encoder_state_raw(i2c_buffer->encoder_state);
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# endif
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# ifdef WPM_ENABLE
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set_current_wpm(i2c_buffer->current_wpm);
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# endif
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# ifdef POINTING_DEVICE_ENABLE
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if (!is_keyboard_left()) {
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i2c_buffer->mouse_x = split_mouse_x;
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i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_MOUSE_X_START, (void *)&i2c_buffer->mouse_x, sizeof(i2c_buffer->mouse_x), TIMEOUT);
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i2c_buffer->mouse_y = split_mouse_y;
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i2c_writeReg(SLAVE_I2C_ADDRESS, I2C_MOUSE_Y_START, (void *)&i2c_buffer->mouse_y, sizeof(i2c_buffer->mouse_y), TIMEOUT);
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}
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# endif
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# ifdef SPLIT_MODS_ENABLE
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set_mods(i2c_buffer->real_mods);
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set_weak_mods(i2c_buffer->weak_mods);
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# ifndef NO_ACTION_ONESHOT
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set_oneshot_mods(i2c_buffer->oneshot_mods);
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# endif
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# endif
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if (layer_state != i2c_buffer->t_layer_state) {
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layer_state = i2c_buffer->t_layer_state;
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}
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if (default_layer_state != i2c_buffer->t_default_layer_state) {
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default_layer_state = i2c_buffer->t_default_layer_state;
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}
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# ifdef OLED_DRIVER_ENABLE
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if (i2c_buffer->oled_on) {
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oled_on();
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} else {
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oled_off();
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}
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# endif
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# ifdef RGB_MATRIX_ENABLE
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rgb_matrix_set_suspend_state(i2c_buffer->is_rgb_matrix_suspended);
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# endif
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}
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void transport_master_init(void) { i2c_init(); }
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void transport_slave_init(void) { i2c_slave_init(SLAVE_I2C_ADDRESS); }
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#else // USE_SERIAL
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# include "serial.h"
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typedef struct _Serial_s2m_buffer_t {
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// TODO: if MATRIX_COLS > 8 change to uint8_t packed_matrix[] for pack/unpack
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matrix_row_t smatrix[ROWS_PER_HAND];
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# ifdef ENCODER_ENABLE
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uint8_t encoder_state[NUMBER_OF_ENCODERS];
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# endif
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int8_t mouse_x;
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int8_t mouse_y;
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} __attribute__((packed)) Serial_s2m_buffer_t;
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typedef struct _Serial_m2s_buffer_t {
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# ifdef SPLIT_MODS_ENABLE
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uint8_t real_mods;
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uint8_t weak_mods;
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# ifndef NO_ACTION_ONESHOT
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uint8_t oneshot_mods;
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# endif
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# endif
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# ifdef BACKLIGHT_ENABLE
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uint8_t backlight_level;
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# endif
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# ifdef WPM_ENABLE
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uint8_t current_wpm;
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# endif
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bool oled_on;
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layer_state_t t_layer_state;
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layer_state_t t_default_layer_state;
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bool is_rgb_matrix_suspended;
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} __attribute__((packed)) Serial_m2s_buffer_t;
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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// When MCUs on both sides drive their respective RGB LED chains,
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// it is necessary to synchronize, so it is necessary to communicate RGB
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// information. In that case, define RGBLIGHT_SPLIT with info on the number
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// of LEDs on each half.
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//
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// Otherwise, if the master side MCU drives both sides RGB LED chains,
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// there is no need to communicate.
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typedef struct _Serial_rgblight_t {
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rgblight_syncinfo_t rgblight_sync;
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} Serial_rgblight_t;
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volatile Serial_rgblight_t serial_rgblight = {};
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uint8_t volatile status_rgblight = 0;
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# endif
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volatile Serial_s2m_buffer_t serial_s2m_buffer = {};
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volatile Serial_m2s_buffer_t serial_m2s_buffer = {};
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uint8_t volatile status0 = 0;
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enum serial_transaction_id {
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GET_SLAVE_MATRIX = 0,
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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PUT_RGBLIGHT,
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# endif
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};
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SSTD_t transactions[] = {
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[GET_SLAVE_MATRIX] =
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{
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(uint8_t *)&status0,
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sizeof(serial_m2s_buffer),
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(uint8_t *)&serial_m2s_buffer,
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sizeof(serial_s2m_buffer),
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(uint8_t *)&serial_s2m_buffer,
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},
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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[PUT_RGBLIGHT] =
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{
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(uint8_t *)&status_rgblight, sizeof(serial_rgblight), (uint8_t *)&serial_rgblight, 0, NULL // no slave to master transfer
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},
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# endif
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};
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void transport_master_init(void) { soft_serial_initiator_init(transactions, TID_LIMIT(transactions)); }
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void transport_slave_init(void) { soft_serial_target_init(transactions, TID_LIMIT(transactions)); }
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# if defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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// rgblight synchronization information communication.
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void transport_rgblight_master(void) {
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if (rgblight_get_change_flags()) {
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rgblight_get_syncinfo((rgblight_syncinfo_t *)&serial_rgblight.rgblight_sync);
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if (soft_serial_transaction(PUT_RGBLIGHT) == TRANSACTION_END) {
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rgblight_clear_change_flags();
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}
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}
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}
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void transport_rgblight_slave(void) {
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if (status_rgblight == TRANSACTION_ACCEPTED) {
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rgblight_update_sync((rgblight_syncinfo_t *)&serial_rgblight.rgblight_sync, false);
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status_rgblight = TRANSACTION_END;
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}
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}
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# else
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# define transport_rgblight_master()
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# define transport_rgblight_slave()
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# endif
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bool transport_master(matrix_row_t matrix[]) {
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# ifndef SERIAL_USE_MULTI_TRANSACTION
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if (soft_serial_transaction() != TRANSACTION_END) {
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return false;
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}
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# else
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transport_rgblight_master();
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if (soft_serial_transaction(GET_SLAVE_MATRIX) != TRANSACTION_END) {
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return false;
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}
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# endif
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// TODO: if MATRIX_COLS > 8 change to unpack()
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for (int i = 0; i < ROWS_PER_HAND; ++i) {
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matrix[i] = serial_s2m_buffer.smatrix[i];
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}
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# ifdef BACKLIGHT_ENABLE
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// Write backlight level for slave to read
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serial_m2s_buffer.backlight_level = is_backlight_enabled() ? get_backlight_level() : 0;
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# endif
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# ifdef ENCODER_ENABLE
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encoder_update_raw((uint8_t *)serial_s2m_buffer.encoder_state);
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# endif
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# ifdef WPM_ENABLE
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// Write wpm to slave
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serial_m2s_buffer.current_wpm = get_current_wpm();
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# endif
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# ifdef SPLIT_MODS_ENABLE
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serial_m2s_buffer.real_mods = get_mods();
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serial_m2s_buffer.weak_mods = get_weak_mods();
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# ifndef NO_ACTION_ONESHOT
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serial_m2s_buffer.oneshot_mods = get_oneshot_mods();
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# endif
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# endif
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# ifdef POINTING_DEVICE_ENABLE
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if (is_keyboard_left()) {
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report_mouse_t temp_report = pointing_device_get_report();
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temp_report.x = serial_s2m_buffer.mouse_x;
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temp_report.y = serial_s2m_buffer.mouse_y;
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pointing_device_set_report(temp_report);
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}
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# endif
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serial_m2s_buffer.t_layer_state = layer_state;
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serial_m2s_buffer.t_default_layer_state = default_layer_state;
|
|
# ifdef OLED_DRIVER_ENABLE
|
|
serial_m2s_buffer.oled_on = is_oled_on();
|
|
# endif
|
|
|
|
# ifdef RGB_MATRIX_ENABLE
|
|
serial_m2s_buffer.is_rgb_matrix_suspended = rgb_matrix_get_suspend_state();
|
|
# endif
|
|
|
|
return true;
|
|
}
|
|
|
|
void transport_slave(matrix_row_t matrix[]) {
|
|
transport_rgblight_slave();
|
|
|
|
// TODO: if MATRIX_COLS > 8 change to pack()
|
|
for (int i = 0; i < ROWS_PER_HAND; ++i) {
|
|
serial_s2m_buffer.smatrix[i] = matrix[i];
|
|
}
|
|
|
|
# ifdef BACKLIGHT_ENABLE
|
|
backlight_set(serial_m2s_buffer.backlight_level);
|
|
# endif
|
|
|
|
# ifdef ENCODER_ENABLE
|
|
encoder_state_raw((uint8_t *)serial_s2m_buffer.encoder_state);
|
|
# endif
|
|
|
|
# ifdef WPM_ENABLE
|
|
set_current_wpm(serial_m2s_buffer.current_wpm);
|
|
# endif
|
|
|
|
# ifdef SPLIT_MODS_ENABLE
|
|
set_mods(serial_m2s_buffer.real_mods);
|
|
set_weak_mods(serial_m2s_buffer.weak_mods);
|
|
# ifndef NO_ACTION_ONESHOT
|
|
set_oneshot_mods(serial_m2s_buffer.oneshot_mods);
|
|
# endif
|
|
# endif
|
|
|
|
# ifdef POINTING_DEVICE_ENABLE
|
|
if (!is_keyboard_left()) {
|
|
serial_s2m_buffer.mouse_x = split_mouse_x;
|
|
serial_s2m_buffer.mouse_y = split_mouse_y;
|
|
}
|
|
# endif
|
|
|
|
if (layer_state != serial_m2s_buffer.t_layer_state) {
|
|
layer_state = serial_m2s_buffer.t_layer_state;
|
|
}
|
|
if (default_layer_state != serial_m2s_buffer.t_default_layer_state) {
|
|
default_layer_state = serial_m2s_buffer.t_default_layer_state;
|
|
}
|
|
# ifdef OLED_DRIVER_ENABLE
|
|
if (serial_m2s_buffer.oled_on) {
|
|
oled_on();
|
|
} else {
|
|
oled_off();
|
|
}
|
|
# endif
|
|
|
|
# ifdef RGB_MATRIX_ENABLE
|
|
rgb_matrix_set_suspend_state(serial_m2s_buffer.is_rgb_matrix_suspended);
|
|
# endif
|
|
}
|
|
|
|
#endif
|
|
|
|
#ifdef POINTING_DEVICE_ENABLE
|
|
void master_mouse_send(int8_t x, int8_t y) {
|
|
split_mouse_x = x;
|
|
split_mouse_y = y;
|
|
}
|
|
#endif
|